Abstract of EP 0 754 709 A1, epacenet database, Jan. 22, 1997. |
Dalton et al., “From Molecules to Opto-chips: Organic Electro-optic Materials,” J. of Materials Chemistry 9:1905-1920, 1999. |
Dalton “Polymeric Electro-Optic Materials: Optimization of Electro-Optic Activity, Minimization of Optical Loss, and Fine Tuning of Device Performance,” Opt. Eng. 39(3):589-595, March 2000. |
Kim et al., “Nonlinear Optical Chomophores Containing Dithienothiophene as a New Type of Electron Relay,” J. of Materials Chemistry 9:227-2232, 1999. |
Kojima et al., “Facile Sunthesis of Thiophene Derivatives Using a Cyclopropenyl Cation,” Synthesis 10:1193-1195, October 1996. |
Lee et al., “Optical Intensity Modulator Based on a Novel Electrooptic Polymer Incorporating a High μβ Chromophore,” IEEE J. of Quantum Electronics 36(5): 527-532, May 2000. |
Raimundo et al., “Push-Pull Chromophores Based on 2,2′-Bi(3,4-Ethylenedioxythiophene) (BEDOT) π-Conjugating Spacer,” Tetrahedron Letters 42:1507-1510, 2001. |
Reinhardt, “Highly Active Two-Photon Dyes: Design, Synthesis, and Characterization toward Application,” Chem. Mater. 10(7):1863-1874, 1998. |
Shi et al., “Low (Sub-1-Volt) Halfwave Voltage Polymeric Electro-Optic Modulators Achieved by Controlling Chromophore Shape,” Science 288:119-122, Apr. 7, 2000. |
Akoudad, S. et al., “Low Oxidation Potential Tetrathiafulvalene Analogues Based on 3,4-Dialkoxtthiophene π-Conjugating Spacers,” Journal of Organic Chemistry 64:4267-4272, 1999. |
Cai, C. et al., “Doner—Acceptor-Substituted Phenylethenyl Bithiophenes: Highly Efficient and Stable Nonlinear Optical Chromophores,” Organic Letters 1(11):1847-1849, 1999. |
Chemical Abstracts Registry Database (American Chemical Society), Registry No. 501910-13-0, April 2003. |
Chemical Catalogs Database (American Chemical Society), Acession No. 2003:2301932, April 2003. |
Chemical Abstracts Registry Database search results regarding Registry No. 501910-13-0 database entry date, Search performed on May 19, 2003. |
Dini and Aszodi, “Synthesis of a Dihydroxythiophene Analogue of Catechosporines,” Bioorganic & Medicinal Chemistry Letters 10: 349-352, 2000. |
Fleitz and Sutherland, “Investigating the Nonlinear Optical Properties of Molten Organic Materials,” Proceedings of SPIE, vol. 3146, pp. 24-30, 1997. |
Halfpenny, J. et al., “Optimisation of Substitution at the 2-and 5-Positions of 3,4-Dialkoxythiophenes via the Mannich Reaction: the Influences of Steric Crowding, Electrophile Reactivity and Temperature,” Journal of the Chemical Society, Perkin Transactions 1: 295-2603, 2001. |
Jen, A. et al., “Synthesis and Characterization of Highly Efficient and Thermally Stable Diphenylamino-Substituted Thiophene Stilbene Chromophores for Nonlinear Optical Applications,” Advanced Materials 9(2): 132-135, 1997. |
Jen, A.K.Y. et al., “Synthesis and Characterization of Highly Efficient, Chemically and Thermally Stable Chromophores with Chromone-Containing Electron Acceptors for NLO Applications,” Advanced Materials 11(6):452-455, 1999. |
Jousselme, B. et al., “Enhancement of the π-Electron Delocalization and Fluorescence Efficiency of 1,6-Diphenyl-1,3,5-Hexatriene by Covalent Rigidification,” Tetrahedron Letters 41: 5057-5061, 2000. |
Kane and Gao, “Synthesis of a Series of Conjugated Enyne Polythiophenes,” Polymer Preprints 33(1): 1064-1065, April 1992. |
Kane and Gao, “Synthesis of a Series of Conjugated Enyne Polythiophenes, II,” Polymer Preprints 33(2): 192-193, August 1992. |
Kato, S. et al., “N-Substituted Chloroacetanilides,” Chemical Abstracts, Accession No. 1986:460516, 1986. See also JP 61-65881. |
Mavlankar & Rangnekar, “Synthesis of 2-(Aryl/Hetaryl)Azo-3,4-Dihydroxy-5-(4-Nitrophenyl)-Thiophene-1, 1-Dioxone Derivatives and their Dyeing Properties,” Indian Journal of Fibre & Textile Research 16: 282-284, December 1991. |
Miyaji, T. et al., “Electrophotographic Photoreceptor using a Charge-Transporting Compound as a Charge-Generating Substance,” Chemical Abstracts, Accession No. 1991:546598, 1991. See also JP 03-31850. |
Miyazaki, H. et al., “Electrophotographic Photoreceptor Using New Photoconductive Material,” Chemical Abstracts, Accession No. 1991:237611, 1991. See also JP 02-244059. |
Nakamura, K. et al., “Organic Electroluminescent Device,” Chemical Abstract, Accession No. 2001:451353, 2001. See also JP 2001-167885. |
Nelson and Boyd, “Enhanced Electro-Optic Response of Layered Composite Materials,” Applied Physics Letters 74(17: 2417-2419, Apr. 26, 1999. |
Ng, S.C. et al., “The Synthesis and Characterization of Fluorescent Poly(heteroaromatic oxadiazole)s,” Macromolecular Chemistry and Physics 202(1): 8-13, 2001. |
Ogiso, A. et al., “Rewritable Optical Recording Medium Including Polyheterocyclic Dye for High-Density Laser Recording,” Chemical Abstracts, Accession No. 2000:715405, 2000. See also JP 2000-280621. |
Ono, N. et al., “Synthesis of Oligo(thienylenevinylenes) Substituted with Alkoxy Groups,” Heteroatom Chemistry 12(5): 414-417, 2001. |
Raimundo, J-M. et al., “Design and Synthesis of Push-Pull Chromophores for Second-Order Nonlinear Optics Derived from Rigidified Thiophene-Based π-Conjugating Spacers,” Journal of Organic Chemistry 67:205-218, 2002. |
Raimundo, J-M. et al. “Proquinoid Acceptors as Building Blocks for the Design of Efficient π-Conjugated Fluorophores with high Electron Affinity,” Chemical Communications, pp. 939-940, 2000. |
Raimundo, J-M. et al., “Huge Enhancement of the Quadratic Nonlinear Optical Susceptibility in Push-Pull Chromophores Based on Bridged Dithienylethylene Spacers,” Chemical Communications, pp. 1597-1598, 2000. |
Rangnekar and Mavlankar, “Synthesis of 5-(4-Arylazo/hetarylazo-phenyl)-2-hetaryl-3,4-dihydroxy-thiophene Derivatives and their Application on Polyester Fibres are Disperse Dyes,” Indian Journal of Fibre & Textile Research 17: 153-157, September 1992. |
Rangnekar and Mavlankar, “Synthesis of Novel c-Hetero-fused Thiophene Derivatives,” Journal of Heterocyclic Chemistry 28(5): 1449-1451, Aug-Sep, 1991. |
Reinhardt, B.A. et al., “Optical Power Limiting in Solution Via Two-Photon Absorption: New Aromatic Heterocyclic Dyes with Greatly Improved Performance,” Proceedings of SPIE, vol. 3146, pp. 2-11, 1997. |
Roncali, J., “Synthetic Principles for Bandgap Control in Linear π-Conjugated Systems” Chem. Rev. 97: 173-205, 1997. |
Shu, Y-C et al., “Synthesis and Characterization of Nonlinear Optical Chromophores with Conformationally Locked Polyenes Possessing Enhanced Thermal Stability,” Chemistry of Materials 11(6): 1628-1632, June 1999. |
Turbiez, M. et al., “Mixed π-Conjugated Oligomers of Thiophene and 3,4-Ethylenedioxythiophene (EDOT),” Tetrahedron Letters 41: 5521-5525, 2000. |
Unrow and Reinhardt, “Synthesis of Substituted Thiophene-benobisthiazoole Oligomers for Molecular Weight—Third Order NLO Property Correlations,” Proceedings of SPIE, vol. 1626, pp. 450459, 1992. |
Wolff, J.J., “Organic Materials for Second-Order Non-Linear Optics,” Advances in Physical Organic Chemistry 32: 121-217, 1999. |
Wu, X. et al., “Highly Efficient, Thermally and Chemically Stable Nonlinear Optical Chromophores based on the α-perfluoroaryldicyanovinyl Electron Acceptors,” Chemical Communications, pp. 2391-2392, 1999. |
Abstract of JP 08-108624, Patent Abstracts of Japan, European Patent Office, Apr. 30, 1996. |
Abstract of JP 2000-089268, Patent Abstracts of Japan, European Patent Office, Mar. 31, 2000. |
Abstract of JP 2001-085713, Patent Abstracts of Japan, European Patent Office, Mar. 30, 2001. |
Abstract of DE 195 32 828 A1, epacenet database, Mar. 21, 1996. |
Abstract of DE 44 01 911 A1, epacenet database, Aug. 3, 1995. |
Abstract of DE 44 16 476 A1, epacenet database, Nov. 16, 1995. |
Das et al., Chemical Abstracts, CA132:42429, 1999. |
Kaneko et al., Chemical Abstracts, CA131:20257, 1999. |
Nishimoto et al., Chemical Abstracts, CA126:218690, 1997. |
Kafuku et al., Chemical Abstracts, CA122:108888, 1995. |
Chiba et al., Chemical Abstracts, CA122:58182, 1995. |
Hagiwara et al., Chemical Abstracts, CA118:201736, 1993. |